Munier S, Peschanski R
Service de Physique Théorique, CEA/Saclay, 91191 Gif-sur-Yvette Cedex, France.
Phys Rev Lett. 2003 Dec 5;91(23):232001. doi: 10.1103/PhysRevLett.91.232001. Epub 2003 Dec 1.
We show the relevance of the nonlinear Fisher and Kolmogorov-Petrovsky-Piscounov (KPP) equation to the problem of high energy evolution of the QCD amplitudes. We explain how the traveling wave solutions of this equation are related to geometric scaling, a phenomenon observed in deep-inelastic scattering experiments. Geometric scaling is for the first time shown to result from an exact solution of nonlinear QCD evolution equations. Using general results on the KPP equation, we compute the velocity of the wave front, which gives the full high energy dependence of the saturation scale.
我们展示了非线性费舍尔方程和柯尔莫哥洛夫-彼得罗夫斯基-皮斯库诺夫(KPP)方程与量子色动力学振幅的高能演化问题的相关性。我们解释了该方程的行波解如何与几何标度相关,几何标度是在深度非弹性散射实验中观察到的一种现象。首次表明几何标度是由非线性量子色动力学演化方程的精确解产生的。利用关于KPP方程的一般结果,我们计算了波前速度,它给出了饱和标度的完整高能依赖性。